Programmable Assembly of Nanoarchitectures Using Genetically Engineered Viruses

Biological systems possess inherent molecular recognition and self-assembly capabilities and are attractive templates for constructing complex material structures with molecular precision. Here we report the assembly of various nanoachitectures including nanoparticle arrays, hetero-nanoparticle arch...

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Veröffentlicht in:Nano letters 2005-07, Vol.5 (7), p.1429-1434
Hauptverfasser: Huang, Yu, Chiang, Chung-Yi, Lee, Soo Kwan, Gao, Yan, Hu, Evelyn L, Yoreo, James De, Belcher, Angela M
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Sprache:eng
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Zusammenfassung:Biological systems possess inherent molecular recognition and self-assembly capabilities and are attractive templates for constructing complex material structures with molecular precision. Here we report the assembly of various nanoachitectures including nanoparticle arrays, hetero-nanoparticle architectures, and nanowires utilizing highly engineered M13 bacteriophage as templates. The genome of M13 phage can be rationally engineered to produce viral particles with distinct substrate-specific peptides expressed on the filamentous capsid and the ends, providing a generic template for programmable assembly of complex nanostructures. Phage clones with gold-binding motifs on the capsid and streptavidin-binding motifs at one end are created and used to assemble Au and CdSe nanocrytals into ordered one-dimensional arrays and more complex geometries. Initial studies show such nanoparticle arrays can further function as templates to nucleate highly conductive nanowires that are important for addressing/interconnecting individual nanostructures.
ISSN:1530-6984
1530-6992
DOI:10.1021/nl050795d